Pfizer Analytical Research Centre (PARC), Australian Centre for Research on Separation Science (ACROSS), School of Chemistry, University of Tasmania, Hobart, Tasmania, Australia.
J Chromatogr B Analyt Technol Biomed Life Sci. 2012 Dec 12;911:93-104. doi: 10.1016/j.jchromb.2012.10.043. Epub 2012 Nov 9.
Two LC approaches for analysis of therapeutic monoclonal antibodies (MAbs) are presented and compared. In the first approach, zwitterionic-type hydrophilic interaction chromatography (ZIC-HILIC) of 2-aminobenzamide-labelled glycans was coupled with fluorescence or electrospray ionisation mass spectrometric (ESI-MS) detection. The ZIC-HILIC method enabled relative quantification and identification of major glycan species. The sensitivity of fluorescence detection was higher compared to ESI-MS; however, MS detection enabled identification of co-eluted peaks. The new ZIC-HILIC approach was compared with porous graphitized carbon (PGC) separation of reduced glycans coupled with ESI-MS. Using PGC higher sensitivity was achieved compared to ZIC-HILIC due to the lower chemical background originating from the mobile phase and the derivatisation step, providing detailed information on minor glycan species. Furthermore, PGC exhibited excellent capability for separation of isobaric glycans with various degrees of mannosylation and galactosylation. The structures of glycans from MAbs used in this study were confirmed by exoglycosidase digestions. The two methods were applied to two monoclonal antibodies expressed in Chinese Hamster ovary cell lines and a monoclonal antibody expressed in a murine NS0 cell line. While the fluorescence-based approach is more suitable for routine glycan profiling due to the simplicity of data analysis, MS-based approaches were shown to provide detailed glycosylation analysis of complex glycoprotein samples.
介绍并比较了两种用于分析治疗性单克隆抗体(mAb)的 LC 方法。在第一种方法中,2-氨基苯甲酰胺标记的聚糖的两性离子亲水色谱(ZIC-HILIC)与荧光或电喷雾离子化质谱(ESI-MS)检测相结合。ZIC-HILIC 方法能够进行相对定量和主要糖型的鉴定。与 ESI-MS 相比,荧光检测的灵敏度更高;然而,MS 检测能够鉴定共洗脱峰。新的 ZIC-HILIC 方法与还原聚糖的多孔石墨化碳(PGC)分离和 ESI-MS 进行了比较。与 ZIC-HILIC 相比,使用 PGC 可实现更高的灵敏度,这是由于流动相和衍生化步骤产生的化学背景较低,从而能够提供有关次要糖型的详细信息。此外,PGC 对具有不同甘露糖和半乳糖化程度的等电聚糖具有出色的分离能力。本研究中使用的 mAb 聚糖的结构通过外切糖苷酶消化得到证实。这两种方法均应用于在中国仓鼠卵巢细胞系中表达的两种单克隆抗体和在鼠 NS0 细胞系中表达的一种单克隆抗体。由于数据分析简单,基于荧光的方法更适合常规聚糖分析,而基于 MS 的方法则显示出能够对复杂糖蛋白样品进行详细的糖基化分析。